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Analysis of emissivity and absorptivity of two overlapping guided modes in two-dimensional periodic structures

机译:二维周期结构中两种重叠导模的发射率和吸收率分析

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摘要

The thermal emission from two guided modes in two-dimensional periodic structures is investigated using first-principles calculations. We use a model that integrates a quantum mechanical analysis of light-matter interactions and a classical connection condition that describes the coupling between light modes inside and outside the structure. We focus on what happens when two guided modes share common radiation modes where their thermal emission overlaps in frequency, solid angle, and polarization in free space. It is shown that we have to take into account the fact that the reaction of the radiation from one guided mode works not only on that guided mode but also on the other guided mode, in order to calculate the emissivity from two overlapping guided modes accurately. Emissivity spectra peculiar to the two-guided mode cases are shown. The condition to maximize the light-matter interaction with respect to thermal emission in the case with two guided modes is also discussed.
机译:使用第一性原理计算来研究二维周期性结构中两个引导模式的热辐射。我们使用一个模型,该模型集成了光物质相互作用的量子力学分析和描述结构内部和外部光模式之间耦合的经典连接条件。我们集中讨论两种引导模式共享公共辐射模式时发生的情况,这些模式的热辐射在频率,立体角和自由空间中的极化方向上重叠。已经表明,我们必须考虑这样一个事实,即来自一个引导模式的辐射的反应不仅作用于该引导模式,而且作用于另一引导模式,以便从两个重叠的引导模式精确地计算出发射率。示出了两种制导模式的情况所特有的发射光谱。还讨论了在两种引导模式下最大化光-质相互作用相对于热发射的条件。

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